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Focused, wide-band, polymer-based optoacoustic transducers for noninvasive monitoring of total hemoglobin concentration and other blood variables

机译:聚焦的,基于聚合物的宽带光声换能器,用于无创监测总血红蛋白浓度和其他血液变量

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One of the most frequently performed blood tests, measurement of total hemoglobin concentration, requires invasive blood sampling. We developed an optoacoustic technique for noninvasive monitoring of total hemoglobin concentration and other blood variables by probing the radial artery or other blood vessels. Recently, we designed and built a focused, wide-band, polymer-based optoacoustic transducer for blood vessel probing with high, submillimeter lateral resolution and incorporated it into a highly portable, laser diode-based optoacoustic system. The focused optoacoustic transducer combines a fiber-optic delivery system and a wide-band piezosensor. First, we experimentally measured transducer parameters (lateral resolution, sensitivity, focal length). To test the transducer capabilities in measurement of total hemoglobin concentration and other blood parameters from blood vessels, we prepared a tissue phantom simulating strongly-scattering tissues with blood vessels of different diameters, spacing, and depths. Optoacoustic signals were acquired from blood at different hemoglobin concentration and oxygenation during transducer scanning over the phantom. In vivo experiments were performed from radial arteries and peripheral veins of different size, depth, and spacing. Submillimeter lateral resolution was obtained in the in vitro and in vivo experiments. The high resolution combined with the wide-band detection of the optoacoustic waves can be used for monitoring of blood variables in blood vessels with high accuracy, sensitivity, and specificity.
机译:总血红蛋白浓度的测量是最频繁进行的血液测试之一,需要有创血液采样。我们通过探测radial动脉或其他血管,开发了一种用于无创监测总血红蛋白浓度和其他血液变量的光声技术。最近,我们设计并构建了一种聚焦的,宽带的,基于聚合物的光声换能器,用于高分辨率,亚毫米级横向分辨率的血管探测,并将其整合到了高度便携的基于激光二极管的光声系统中。聚焦光声换能器结合了光纤传输系统和宽带压电传感器。首先,我们通过实验测量了换能器参数(横向分辨率,灵敏度,焦距)。为了测试换能器测量血管中总血红蛋白浓度和其他血液参数的能力,我们准备了一个组织模型,可以模拟具有不同直径,间距和深度的血管的强散射组织。在换能器扫描幻像期间,从血液中获得了不同血红蛋白浓度和氧合的光声信号。从不同大小,深度和间距的radial动脉和外周静脉进行了体内实验。在体外和体内实验中获得了亚毫米级的横向分辨率。高分辨率与光声波的宽带检测相结合,可用于以高精度,灵敏性和特异性监测血管中的血液变量。

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